Coefficient of permeability at any temperature t for standard value of coefficient of permeability Solution

STEP 0: Pre-Calculation Summary
Formula Used
Coefficient of Permeability at any Temperature t = (Standard Coefficient of Permeability at 20°C*Kinematic Viscosity at 20° C)/Kinematic Viscosity at t° C
Kt = (Ks*vs)/vt
This formula uses 4 Variables
Variables Used
Coefficient of Permeability at any Temperature t - (Measured in Centimeter per Second) - Coefficient of permeability at any temperature t of a soil describes how easily a liquid will move through a soil.
Standard Coefficient of Permeability at 20°C - Standard Coefficient of Permeability at 20°C of pure water at standard temperature.
Kinematic Viscosity at 20° C - (Measured in Square Meter per Second) - Kinematic Viscosity at 20° C standard is a measure of a fluid's internal resistance to flow under gravitational forces.
Kinematic Viscosity at t° C - (Measured in Square Meter per Second) - Kinematic Viscosity at t° C standard consideration.
STEP 1: Convert Input(s) to Base Unit
Standard Coefficient of Permeability at 20°C: 8.34 --> No Conversion Required
Kinematic Viscosity at 20° C: 12 Square Meter per Second --> 12 Square Meter per Second No Conversion Required
Kinematic Viscosity at t° C: 24 Square Meter per Second --> 24 Square Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Kt = (Ks*vs)/vt --> (8.34*12)/24
Evaluating ... ...
Kt = 4.17
STEP 3: Convert Result to Output's Unit
0.0417 Meter per Second -->4.17 Centimeter per Second (Check conversion here)
FINAL ANSWER
4.17 Centimeter per Second <-- Coefficient of Permeability at any Temperature t
(Calculation completed in 00.004 seconds)

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21 Coefficient of Permeability Calculators

Hagen Poiseuille flow or mean particle size of porous medium laminar flow through conduit
Go Mean Particle Size of the Porous Medium = sqrt((Coefficient of Permeability (Hagen-Poiseuille)*Dynamic Viscosity of the Fluid)/(Shape Factor*(Unit Weight of Fluid/1000)))
Dynamic viscosity of fluid of laminar flow through conduit or Hagen Poiseuille flow
Go Dynamic Viscosity of the Fluid = (Shape Factor*Mean Particle Size of the Porous Medium^2)*((Unit Weight of Fluid/1000)/Coefficient of Permeability (Hagen-Poiseuille))
Coefficient of permeability from analogy of laminar flow (Hagen Poiseuille flow)
Go Coefficient of Permeability (Hagen-Poiseuille) = Shape Factor*(Mean Particle Size of the Porous Medium^2)*(Unit Weight of Fluid/1000)/Dynamic Viscosity of the Fluid
Coefficient of permeability at any temperature t for standard value of coefficient of permeability
Go Coefficient of Permeability at any Temperature t = (Standard Coefficient of Permeability at 20°C*Kinematic Viscosity at 20° C)/Kinematic Viscosity at t° C
Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability
Go Kinematic Viscosity at 20° C = (Coefficient of Permeability at any Temperature t*Kinematic Viscosity at t° C)/Standard Coefficient of Permeability at 20°C
Kinematic Viscosity for standard value of coefficient of permeability
Go Kinematic Viscosity at t° C = (Standard Coefficient of Permeability at 20°C*Kinematic Viscosity at 20° C)/Coefficient of Permeability at any Temperature t
Standard value of coefficient of permeability
Go Standard Coefficient of Permeability at 20°C = Coefficient of Permeability at any Temperature t*(Kinematic Viscosity at t° C/Kinematic Viscosity at 20° C)
Coefficient of permeability at temperature of permeameter experiment
Go Coefficient of Permeability at the temperature = (Discharge/Cross-Sectional Area)*(1/(Constant Head Difference/Length))
Cross sectional area when coefficient of permeability at permeameter experiment is considered
Go Cross-Sectional Area = Discharge/(Coefficient of Permeability at the temperature*(Constant Head Difference/Length))
Discharge when Coefficient of Permeability at Permeameter Experiment is Considered
Go Discharge = Coefficient of Permeability at the temperature*Cross-Sectional Area*(Constant Head Difference/Length)
Length when Coefficient of Permeability at Permeameter Experiment is Considered
Go Length = (Constant Head Difference*Cross-Sectional Area*Coefficient of Permeability at the temperature)/Discharge
Coefficient of Permeability when Specific or Intrinsic Permeability is Considered
Go Coefficient of Permeability at the temperature = Intrinsic Permeability*((Unit Weight of Fluid/1000)/Dynamic Viscosity of the Fluid)
Specific or Intrinsic Permeability when Coefficient of Permeability is Considered
Go Intrinsic Permeability = (Coefficient of Permeability at the temperature*Dynamic Viscosity of the Fluid)/(Unit Weight of Fluid/1000)
Specific or Intrinsic Permeability when Dynamic Viscosity is Considered
Go Intrinsic Permeability = (Coefficient of Permeability at the temperature*Dynamic Viscosity of the Fluid)/(Unit Weight of Fluid/1000)
Dynamic Viscosity when Specific or Intrinsic Permeability is Considered
Go Dynamic Viscosity of the Fluid = Intrinsic Permeability*((Unit Weight of Fluid/1000)/Coefficient of Permeability at the temperature)
Kinematic Viscosity when Specific or Intrinsic Permeability is Considered
Go Kinematic Viscosity = (Intrinsic Permeability*Acceleration due to Gravity)/Coefficient of Permeability
Equation for Specific or Intrinsic Permeability
Go Intrinsic Permeability = Shape Factor*Mean Particle Size of the Porous Medium^2
Kinematic Viscosity and Dynamic Viscosity Relation
Go Kinematic Viscosity = Dynamic Viscosity of the Fluid/Density of Fluid
Unit weight of fluid
Go Unit Weight of Fluid = Density of Fluid*Acceleration due to Gravity
Coefficient of Permeability when Transmissibility is Considered
Go Coefficient of Permeability = Transmissibility/Aquifer Thickness
Equivalent permeability when transmissivity of aquifer is considered
Go Equivalent Permeability = Transmissivity/Aquifer Thickness

Coefficient of permeability at any temperature t for standard value of coefficient of permeability Formula

Coefficient of Permeability at any Temperature t = (Standard Coefficient of Permeability at 20°C*Kinematic Viscosity at 20° C)/Kinematic Viscosity at t° C
Kt = (Ks*vs)/vt

What is Coefficient of Permeability?

The Coefficient of Permeability of a soil describes how easily a liquid will move through a soil. It is also commonly referred to as the hydraulic conductivity of a soil. This factor can be affected by the viscosity, or thickness(fluidity) of a liquid and its density.

How to Calculate Coefficient of permeability at any temperature t for standard value of coefficient of permeability?

Coefficient of permeability at any temperature t for standard value of coefficient of permeability calculator uses Coefficient of Permeability at any Temperature t = (Standard Coefficient of Permeability at 20°C*Kinematic Viscosity at 20° C)/Kinematic Viscosity at t° C to calculate the Coefficient of Permeability at any Temperature t, Coefficient of permeability at any temperature t for standard value of coefficient of permeability is defined as the permeability coefficient at any temperature t degree Celsius. Coefficient of Permeability at any Temperature t is denoted by Kt symbol.

How to calculate Coefficient of permeability at any temperature t for standard value of coefficient of permeability using this online calculator? To use this online calculator for Coefficient of permeability at any temperature t for standard value of coefficient of permeability, enter Standard Coefficient of Permeability at 20°C (Ks), Kinematic Viscosity at 20° C (vs) & Kinematic Viscosity at t° C (vt) and hit the calculate button. Here is how the Coefficient of permeability at any temperature t for standard value of coefficient of permeability calculation can be explained with given input values -> 417 = (8.34*12)/24.

FAQ

What is Coefficient of permeability at any temperature t for standard value of coefficient of permeability?
Coefficient of permeability at any temperature t for standard value of coefficient of permeability is defined as the permeability coefficient at any temperature t degree Celsius and is represented as Kt = (Ks*vs)/vt or Coefficient of Permeability at any Temperature t = (Standard Coefficient of Permeability at 20°C*Kinematic Viscosity at 20° C)/Kinematic Viscosity at t° C. Standard Coefficient of Permeability at 20°C of pure water at standard temperature, Kinematic Viscosity at 20° C standard is a measure of a fluid's internal resistance to flow under gravitational forces & Kinematic Viscosity at t° C standard consideration.
How to calculate Coefficient of permeability at any temperature t for standard value of coefficient of permeability?
Coefficient of permeability at any temperature t for standard value of coefficient of permeability is defined as the permeability coefficient at any temperature t degree Celsius is calculated using Coefficient of Permeability at any Temperature t = (Standard Coefficient of Permeability at 20°C*Kinematic Viscosity at 20° C)/Kinematic Viscosity at t° C. To calculate Coefficient of permeability at any temperature t for standard value of coefficient of permeability, you need Standard Coefficient of Permeability at 20°C (Ks), Kinematic Viscosity at 20° C (vs) & Kinematic Viscosity at t° C (vt). With our tool, you need to enter the respective value for Standard Coefficient of Permeability at 20°C, Kinematic Viscosity at 20° C & Kinematic Viscosity at t° C and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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